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特殊条件下聚合物超临界CO₂发泡:激光与超声的应用

Polymer Supercritical CO Foaming under Peculiar Conditions: Laser and Ultrasound Implementation.

作者信息

Villamil Jiménez Jennifer Andrea, Haurat Margaux, Berriche Rayan, Baillon Fabien, Sauceau Martial, Chaussat Mattéo, Tallon Jean-Marc, Kusiak Andrzej, Dumon Michel

机构信息

Centre RAPSODEE, UMR CNRS 5302, IMT Mines Albi, Université de Toulouse, F-81013 Albi, France.

Laboratoire de Chimie des Polymères Organiques (LCPO), UMR 5629, Bordeaux INP/ENSCBP, University Bordeaux, CNRS, F-33607 Pessac, France.

出版信息

Polymers (Basel). 2023 Apr 21;15(8):1968. doi: 10.3390/polym15081968.

Abstract

The two-step batch foaming process of solid-state assisted by supercritical CO is a versatile technique for the foaming of polymers. In this work, it was assisted by an out-of-autoclave technology: either using lasers or ultrasound (US). Laser-aided foaming was only tested in the preliminary experiments; most of the work involved US. Foaming was carried out on bulk thick samples (PMMA). The effect of ultrasound on the cellular morphology was a function of the foaming temperature. Thanks to US, cell size was slightly decreased, cell density was increased, and interestingly, thermal conductivity was shown to decrease. The effect on the porosity was more remarkable at high temperatures. Both techniques provided micro porosity. This first investigation of these two potential methods for the assistance of supercritical CO batch foaming opens the door to new investigations. The different properties of the ultrasound method and its effects will be studied in an upcoming publication.

摘要

超临界CO₂辅助的两步固态间歇发泡工艺是一种用于聚合物发泡的通用技术。在这项工作中,它采用了一种釜外技术:使用激光或超声(US)。激光辅助发泡仅在初步实验中进行了测试;大部分工作涉及超声。发泡是在块状厚样品(聚甲基丙烯酸甲酯)上进行的。超声对泡孔形态的影响是发泡温度的函数。由于超声的作用,泡孔尺寸略有减小,泡孔密度增加,有趣的是,热导率显示出降低。在高温下对孔隙率的影响更为显著。两种技术都提供了微孔结构。对这两种辅助超临界CO₂间歇发泡的潜在方法的首次研究为新的研究打开了大门。超声方法的不同特性及其影响将在即将发表的出版物中进行研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb39/10143122/e9157e607611/polymers-15-01968-g001.jpg

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